A detailed investigation of staged normal injection into a Mach 2 flow
Abstract
A study of the staged injection of two jets of air behind a rearward facing step into a Mach 2 flow was performed using the SPARK 3-D Navier-Stokes code. Calculated mole fraction distributions were compared with an extensive set of planar mole fraction measurements made with a laser induced iodine fluorescence technique. A statistical measure, the standard deviation, was used to help assess agreement between calculation and experiment. Overall, good agreement was found between calculated and measured values. Generally, agreement was better in the far field of the injectors. The effect of grid resolution was investigated by calculating solutions on grids of 60,000, 200,000, and 450,000 points. Differences in the solutions on the two finer grids were small. However, the mole fraction distributions were distinguishable. The effect of turbulence modeling was investigated by employing three different algebraic models for the jet turbulence: the Baldwin-Lomax model, the Prandtl mixing length model, and the Eggers mixing length model. Overall, the Eggers mixing length model was found to be superior for this case. Finally, the effect of the jet exit conditions was examined. A recently proposed Mach number distribution at the jet exit was found to slightly improve agreement between measurement and calculation.
- Publication:
-
In JHU
- Pub Date:
- November 1990
- Bibcode:
- 1990jhu.....3..115E
- Keywords:
-
- Air Jets;
- Backward Facing Steps;
- Injection;
- Mixing Length Flow Theory;
- Navier-Stokes Equation;
- Supersonic Flow;
- Turbulence Models;
- Turbulent Mixing;
- Algebra;
- Computational Grids;
- Far Fields;
- Injectors;
- Iodine;
- Laser Induced Fluorescence;
- Standard Deviation;
- Turbulence;
- Turbulent Flow;
- Fluid Mechanics and Heat Transfer